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Integrated Optimization Model for Alloy Addition of Basic Oxygen Furnace Based on Particle Swarm Optimization

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Indexed by:会议论文

Date of Publication:2010-10-10

Included Journals:EI、CPCI-S、Scopus

Page Number:4257-4262

Key Words:Alloy addition; Particle Swarm Optimization; Support Vector Machine; Multi-objective Optimization

Abstract:In the process of BOF(basic oxygen furnace) steelmaking, in order to figure out and optimize the amount of alloy addition during deoxidizing and alloying of tapping, optimization model of this process is very indispensable. For this reason, multi-objective optimization model of alloy addition is developed. Firstly, the prediction model of ladle element content is established with Support Vector Machine. One objective function of multi-objective problem is the error between regulations and the result of the prediction model, the other objective function is the cost of alloy addition. And the alloy addition is optimized with modified dynamic neighborhood multi-objective Particle Swarm Optimization so as to compute the Pareto optimal solution set effectively. The final amount of alloy added is decided according to the practical need.

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